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Robust $H_{infty}$ Filtering for a Class of Nonlinear Networked Systems With Multiple Stochastic Communication Delays and Packet Dropouts

机译:一类具有多个随机通信延迟和丢包的非线性网络系统的鲁棒$ H_ {infty} $滤波

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In this paper, the robust H¿ filtering problem is studied for a class of uncertain nonlinear networked systems with both multiple stochastic time-varying communication delays and multiple packet dropouts. A sequence of random variables, all of which are mutually independent but obey Bernoulli distribution, are introduced to account for the randomly occurred communication delays. The packet dropout phenomenon occurs in a random way and the occurrence probability for each sensor is governed by an individual random variable satisfying a certain probabilistic distribution in the interval. The discrete-time system under consideration is also subject to parameter uncertainties, state-dependent stochastic disturbances and sector-bounded nonlinearities. We aim to design a linear full-order filter such that the estimation error converges to zero exponentially in the mean square while the disturbance rejection attenuation is constrained to a give level by means of the H¿ performance index. Intensive stochastic analysis is carried out to obtain sufficient conditions for ensuring the exponential stability as well as prescribed H¿ performance for the overall filtering error dynamics, in the presence of random delays, random dropouts, nonlinearities, and the parameter uncertainties. These conditions are characterized in terms of the feasibility of a set of linear matrix inequalities (LMIs), and then the explicit expression is given for the desired filter parameters. Simulation results are employed to demonstrate the effectiveness of the proposed filter design technique in this paper.
机译:在本文中,针对一类具有多个随机时变通信延迟和多个数据包丢失的不确定非线性网络系统,研究了鲁棒的HÃÂ,滤波问题。引入了一系列相互独立但服从伯努利分布的随机变量序列,以解决随机发生的通信延迟问题。数据包丢失现象以随机方式发生,并且每个传感器的发生概率由满足间隔中一定概率分布的单个随机变量控制。所考虑的离散时间系统还受到参数不确定性,与状态有关的随机干扰和扇区边界非线性的影响。我们旨在设计一个线性的全阶滤波器,以使估计误差在均方中呈指数收敛至零,而干扰抑制衰减则通过Hâ性能指标被限制在给定水平上。进行密集的随机分析以获得足够的条件,以确保在存在随机延迟,随机丢失,非线性和参数的情况下,对于总体滤波误差动态,确保指数稳定性以及指定的Hâ性能。不确定性。根据一组线性矩阵不等式(LMI)的可行性来表征这些条件,然后为所需的滤波器参数给出明确的表达式。仿真结果证明了所提出的滤波器设计技术的有效性。

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